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Can Na+ Transport Faster Than Li+ inside Zn-Sb Intermetallic Nanomaterials?

Published online by Cambridge University Press:  23 September 2015

Anmin Nie
Affiliation:
Department of Mechanical Engineering-Engineering Mechanics, Michigan Technological University, 1400 Townsend Dive, Houghton, Michigan 49931, United States Department of Physics, University of Illinois at Chicago, Chicago, Illinois 60607, United States
Yingchun Cheng
Affiliation:
Mechanical and Industrial Engineering Department, University of Illinois at Chicago, Chicago, Illinois 60607, United States
Robert F. Klie
Affiliation:
Department of Physics, University of Illinois at Chicago, Chicago, Illinois 60607, United States
Sreeram Vaddiraju
Affiliation:
Artie McFerrin Department of Chemical Engineering, Texas A&M University, 3122 TAMU, College Station, TX 77843, United States
Reza Shahbazian-Yassar
Affiliation:
Department of Mechanical Engineering-Engineering Mechanics, Michigan Technological University, 1400 Townsend Dive, Houghton, Michigan 49931, United States

Abstract

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Type
Abstract
Copyright
Copyright © Microscopy Society of America 2015 

References

Reference:

[1] Slater, M. D., et al, Adv. Funct. Mater. 23 (2013) 947.CrossRefGoogle Scholar
[2] Pan, H., et al, Energy Environ. Sci 6 (2013) 2338.Google Scholar
[3] Palomares, V., et al, Energy Environ. Sci 5 (2012) 5884.Google Scholar
[4] Nie, A., et al, Nano lett 14 (2014) 5301.Google Scholar
[5] The authors acknowledge the funding from the National Science Foundation (Award No. CMMI-1200383) and the American Chemical Society-Petroleum Research Fund (Award No. 51458-ND10). The acquisition of the UIC JEOL JEM-ARM200CF is supported by an MRI-R2 grant from the National Science Foundation (Award No. DMR-0959470). Support from the UIC Research Resources Center is also acknowledged..Google Scholar